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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Simultaneous and Proportional Force Estimation for Multifunction Myoelectric Prostheses Using Mirrored Bilateral Training
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Simultaneous and Proportional Force Estimation for Multifunction Myoelectric Prostheses Using Mirrored Bilateral Training

机译:使用镜像双向训练的多功能肌电假体的同时和比例力估计

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摘要

This study presents a novel method for associating features of the surface electromyogram (EMG) recorded from one upper limb to the force produced by the contralateral limb. Bilateral-mirrored contractions from ten able-bodied subjects were recorded along with isometric forces in multiple degrees of freedom (DOF) from the right wrist. An artificial neural network was trained to provide force estimation. Combinations of processing parameters were evaluated and an estimation algorithm allowing high accuracy from relatively short signal epochs (100 ms) was proposed. The estimation performance when using surface EMG from the contralateral limb was 0.90 $pm$ 0.02 for the able-bodied subjects. In comparison, the estimation performance for one subject with congenital malformation of the left forearm was 0.72 which, albeit lower than for able-bodied subjects, is still comparable to or better than previously reported results. The proposed method requires only the measured forces from one limb, such as in the case of unilateral amputees and has thus the potential to be used in clinical settings for intuitive, simultaneous control of multiple DOFs in myoelectric prostheses.
机译:这项研究提出了一种新方法,用于将一个上肢记录的表面肌电图(EMG)特征与对侧肢体产生的力相关联。记录了来自十个健全主体的双边镜像收缩以及右手腕在多个自由度(DOF)中的等距测力。训练了人工神经网络以提供力估计。对处理参数的组合进行了评估,并提出了一种估计算法,该算法可在较短的信号周期(100毫秒)内实现高精度。对于健壮的受试者,当使用对侧肢体的表面肌电图时的估计性能为0.90 $ pm $ 0.02。相比之下,一位左臂先天性畸形的受试者的估计表现为0.72,尽管比身体健全的受试者要低,但仍可与之前的结果相媲美或更好。所提出的方法仅需要从一个肢体测得的力,例如在单侧截肢的情况下,因此有潜力用于临床环境中,以直观,同时地控制肌电假体中的多个自由度。

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